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1. Agricultural Knowledge and Innovation Systems and Sustainable Management of Natural Resources †.

2. Universitas Brawijaya Researchers Highlight Research in Agriculture (The technical and financial feasibility analysis of art paper production from betel nut husk fibre and paper waste).

4. PROBLEM-SOLVING GROUNDS IN SMALL-SCALE FARMING IN WESTERN ROMANIAN AGRICULTURE.

5. Revolutionizing Farming: Iot-Enabled Organic Carbon Detection For Enhanced Agricultural Practices.

6. A Review of Machine Learning Techniques in Agroclimatic Studies.

7. Strategic Analysis of Biosafety in Agricultural Product Supply Chain Management within E-commerce Platforms.

8. Comparative Analysis on Food Security between Kenya and Zambia.

9. Protecting Food Animal Gene Pools for Future Generations A paper in the series on The Need for Agricultural Innovation to Sustainably Feed the World by 2050.

10. Food Biofortification--Reaping the Benefits of Science to Overcome Hidden Hunger: A paper in the series on The Need for Agricultural Innovation to Sustainably Feed the World by 2050.

11. Applications of Machine Learning in National Territory Spatial Planning.

12. Endogenous learning and innovation in African smallholder agriculture: lessons from Guinea-Bissau.

13. Agricultural total factor productivity, digital economy and agricultural high-quality development.

15. Two-Way FDI assists agricultural sustainable development: Based on digitalization and greening perspectives.

16. Agricultural Technology Innovation and Food Security in China: An Empirical Study on Coupling Coordination and Its Influencing Factors.

17. The Influence of New Quality Productive Forces on High-Quality Agricultural Development in China: Mechanisms and Empirical Testing.

18. An environment safety monitoring system for agricultural production based on artificial intelligence, cloud computing and big data networks.

19. The Digital Economy, Green Technology Innovation, and Agricultural Green Total Factor Productivity.

20. On-farm experimentation in agronomic research: an Italian perspective.

21. ECONOMIC EFFICIENCY OF THE LAND RESOURCE MANAGEMENT BY AGRICULTURAL PRODUCERS IN THE SYSTEM OF THEIR NON-CURRENT ASSETS ANALYSIS: A CASE STUDY OF THE AGRICULTURAL SECTOR OF UKRAINE.

22. Discussion of the Opinion Paper “Hydrology and change” by Demetris Koutsoyiannis.

23. Environmental regulation and agricultural green productivity growth in China: A retest based on 'Porter Hypothesis'.

24. Fifteen Years of Integrated Terrestrial Environmental Observatories (TERENO) in Germany: Functions, Services, and Lessons Learned.

25. MOLO-SLAM: A Semantic SLAM for Accurate Removal of Dynamic Objects in Agricultural Environments.

26. Effect of biased reduction targets on agricultural green innovation: an empirical study on the strategy of zero growth in synthetic fertilizer use.

27. A Comparative Study of Physically Accurate Synthetic Shadow Datasets in Agricultural Settings with Human Activity.

28. MODELING OF INNOVATION AND INVESTMENT DEVELOPMENT OF AGRICULTURAL ENTERPRISES IN THE CONTEXT OF ENSURING THEIR FINANCIAL SECURITY.

29. Assessing the Sustainability of Urban Agriculture in Shanghai's Nine Agriculture Districts: A Decadal Analysis (2010–2020).

30. State of Knowledge of Irrigation Techniques and Practicalities within Given Socio‐Economic Settings.

31. Does Rural Operation System Reform Enhance Agricultural Output? Evidence from Sichuan Province.

32. Agricultural advisory and extension service approaches and inclusion in reaching out to Kenyan rural farmers.

33. Is India ready for technological change in agriculture: From urban to rural path for agridrones.

34. Automatska kontrola rada prskalice.

35. Can the Integration of Rural Industries Help Strengthen China's Agricultural Economic Resilience?

36. Addressing data access problems in the emerging digital agriculture sector: potential of the refusal to deal case law to complement ex-ante regulation.

37. Understanding capacities to scale innovations for sustainable development: a learning journey of scaling partnerships in three parts of Africa.

38. Barriers and drivers for sustainable business model innovation based on a radical farmland change scenario.

39. STIMULATION OF DEMAND FOR INNOVATION IN AGRICULTURE BASED ON NEW MODELS OF COLLABORATION OF VALUES.

40. DIGITALIZATION OF RURAL AREAS AND PRECISION AGRICULTURE.

41. Innovation in Agri-food Systems - A Systematic Mapping of the Literature.

42. The contribution of research to agricultural policy in Europe.

43. Big data promises and obstacles: Agricultural data ownership and privacy.

44. Ecological Modernization and the “Gene Revolution”: The Case Study of Bt Cotton in India**I would like to thank Michael Gismondi at Athabasca University, Gordon Laxer at the University of Alberta, Susan A. McDaniel at the University of Windsor, and Capitalism Nature Socialism managing editor Karen Charman for their encouragement and useful comments on a previous version of this paper.****Research for this case study includes analysis of government policy documents, media and non-governmental organization reports as well as qualitative data gathered from farmers during field research in Warangal district between May and August 2004.

45. Evaluation of the Certification Procedure of Farm Advisors in Greece †.

46. The Agricultural Knowledge and Innovation System (AKIS) in a Changing Environment in Greece †.

47. The Implementation of Innovation and the Attitudes of Farmers towards Advisory Services: The Case of Western Macedonia, Greece †.

48. Harnessing Digital Twins for Agriculture 5.0: A Comparative Analysis of 3D Point Cloud Tools.

49. Farmer-centered and structural perspectives on innovation and scaling: a study on sustainable agriculture and nutrition in East Africa.

50. Data-driven agriculture and sustainable farming: friends or foes?